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BS EN IEC 61643-352:2018

$142.49

Components for low-voltage surge protection – Selection and application principles for telecommunications and signalling network surge isolation transformers (SITs)

Published By Publication Date Number of Pages
BSI 2018 26
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IEC 61643-352:2018 covers the application of surge isolation transformers (SITs) that are used in telecommunication transformer applications with signal levels up to 400 V peak to peak. These transformers have a high rated impulse voltage with or without screen between the input and output windings. SITs are components for surge protection and are used to mitigate the onward propagation of common-mode voltage surges. This document describes SITs’ selection, application principles and related information. This document does not cover power line communication transformers.

PDF Catalog

PDF Pages PDF Title
2 undefined
7 English
CONTENTS
9 FOREWORD
11 INTRODUCTION
12 1 Scope
2 Normative references
3 Terms, definitions, symbols and abbreviated terms
3.1 Terms and definitions
13 3.2 Symbols
Figures
Figure 1 – Symbol for a two-winding SIT
14 3.3 Abbreviated terms
Figure 2 – Symbol for a two-winding SIT with polarity indication
Figure 3 – Symbol for a two-winding SIT with electric screen
Figure 4 – SIT with centre tapped windings
15 4 Service conditions
4.1 Temperature range
4.2 Humidity
4.3 Altitude
4.4 Microclimate
Tables
Table 1 – List of abbreviated terms used in this document
Table 2 – Classification of microclimate condition
16 5 SIT surge conditions
5.1 SIT surge mitigation
Figure 5 – Common-mode surge conditions for SIT
17 5.2 Common-mode surges
Figure 6 – Common-mode surge conditions for SIT with an electric screen
18 5.3 Differential-mode surges
5.3.1 General
5.3.2 Ethernet transformer differential surge action
6 Selection
6.1 General
6.2 Impulse withstand voltage
Figure 7 – Transformer differential surge truncation
19 6.3 Rated values of SIT
7 Applications
7.1 General
7.2 Example of surge protection using SITs with ES for control and terminal equipment installed in two different buildings respectively
7.3 Example of surge protection using SITs for telecommunication equipment in substation
Figure 8 – Example of surge protection using SITs in order toisolate two different buildings
20 Figure 9 – Example of surge protection using SITs in substation
21 7.4 Example of surge protection using SITs for transmission and switching equipment installed in different floors in a communication building
Figure 10 – Example of surge protection using SITs in a communication building
22 7.5 Example of surge protection using SITs for computer network equipment in a data centre
7.6 Example of surge protection using SITs for a Power over Ethernet (PoE) system
Figure 11 – Example of surge protection using SITs in a data centre
Figure 12 – Example of surge protection using SITs for a Power over Ethernet (PoE) system
23 7.7 Example of surge protection using SITs for LAN
Figure 13 – Example of surge protection using SITs for LAN
24 Annex A (informative) Lightning overvoltages of telecommunication line
Figure A.1 – Lightning overvoltages of telecommunication line
25 Bibliography
BS EN IEC 61643-352:2018
$142.49